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电润湿离子液体变焦透镜 被引量:8

Variable Focus Ionic Liquid Lens Based on Electrowetting
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摘要 利用电润湿原理设计并实现了基于离子液体的变焦液体透镜。该透镜的聚焦电压与所使用的离子液体折光率直接相关,折光率越高,达到相同焦距所需的电压也越大。在相同情况下,与传统的盐水溶液变焦透镜相比,离子液体变焦透镜实现聚焦所需的电压更低。离子液体变焦透镜可以适应外界温度的剧烈变化,在高温条件下(>80℃)仍可正常运转,且其性能甚至更优。该透镜的变焦范围可从5cm至无穷远,而其能耗只有毫瓦量级。离子液体在红外区透光性良好,使得离子液体变焦透镜在红外成像上有广阔的应用前景。 Variable focus lens based on ionic liquids is investigated by using electrowetting. The presented results show that focusing voltages are strongly affected with reflective index, i.e. driving voltage to obtain identical focal length is remarkably increased with increasing reflective index. The focusing voltage of the lens (80 V) is quite lower than that of the saline lens (100 V). Moreover, the lens exhibits excellent performance over saline lens such as good tolerance of sharply temperature varying, wide operating temperature which is up to 80 oC and in particular high stability at high temperature. The adjustable range of focal length varies from 5 cm to the infinite with energy consumption several tenths of a milliwatt low. Besides, it could have potential application in near-infrared image system.
出处 《光电工程》 CAS CSCD 北大核心 2012年第2期53-58,共6页 Opto-Electronic Engineering
基金 国家自然科学基金资助项目(20533080) 甘肃省科技支撑计划资助项目(1011GKCA018)
关键词 应用光学 变焦液体透镜 离子液体 电润湿 红外成像 applied optics variable focus liquid lens ionic liquids electrowetting infrared imaging
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参考文献22

  • 1梁忠诚,徐宁,涂兴华,陈陶,赵瑞.新颖的微流控光学变焦透镜阵列集成器件[J].光电工程,2008,35(9):32-35. 被引量:15
  • 2康明,岳瑞峰,吴建刚,欧阳帆,刘理天.基于EWOD的锥形管状结构液体变焦透镜[J].传感技术学报,2006,19(05A):1768-1770. 被引量:10
  • 3欧阳帆,吴建刚,康明,岳瑞峰,刘理天.基于介质上电润湿的平面可变焦液体微透镜[J].传感技术学报,2006,19(05A):1747-1749. 被引量:2
  • 4Hendriks B H W, Kuiper S, Van As M A J, et al. Electrowetting-based variable-focus lens for miniature systems [J]. Optical Review(S1340-6000), 2005, 12(3): 255-259.
  • 5Krupenkin T, Yang S, Mach E Tunable liquid microlens [J]. Applied Physics Letters (S0003-6951), 2003, 82(3): 316-318.
  • 6Rogers R D, Seddon K R. Ionic liquids - Solvents of the future? [J]. Science (S0036-8075), 2003, 302(5646): 792-793.
  • 7Seddon K. Ionic liquids: designer solvents for green synthesis [J]. The Chemical Engineer (S1385-8947), 2002, 730: 33-35.
  • 8Welton T. Ionic liquids in Green Chemistry [J]. Green Chemistry (S1463-9262), 20i 1, 13(2): 225.
  • 9Welton T, Hallett J P. Room-Temperature Ionic Liquids: Solvents for Synthesis and Catalysis. 2 [J]. Chemical Reviews (S0009-2665), 2011, 111(5): 3508-3576.
  • 10绳金侠,彭润玲,陈家璧.电湿效应双液体变焦透镜性能的分析[J].光学仪器,2007,29(4):23-26. 被引量:12

二级参考文献83

  • 1康明,岳瑞峰,吴建刚,欧阳帆,刘理天.基于EWOD的锥形管状结构液体变焦透镜[J].传感技术学报,2006,19(05A):1768-1770. 被引量:10
  • 2祝澄,彭润玲,陈家璧.基于电湿效应的双液体透镜[J].大学物理,2007,26(6):57-62. 被引量:9
  • 3绳金侠,彭润玲,陈家璧.电湿效应双液体变焦透镜性能的分析[J].光学仪器,2007,29(4):23-26. 被引量:12
  • 4Commander L G,et al.Variable focal length microlenses[J].Optics Communications,2000,177(1-6):157-170.
  • 5Kuiper S,Hendriks B H W,et al.Variable-focus liquid lens for portable applications[J].SPIE,2004,5523:100-109.
  • 6Sandre O,et al.Moving droplets on asymmetrically structured surfaces[J].Physical Review E,1999,60(3):2964-2972.
  • 7Jun T K,Kim C J.Valveless pumping using traversing vapor bubbles in microchannels[J].Journal of Applied Physics,1998,83(11):5658-5664.
  • 8Togo H,Sato M,Shimokawa F.Multi-element thermo-capillary optical switch and sub-nanoliter oil injection for its fabrication[A].Proceedings of IEEE International Conference on Micro Electro Mechanical Systems (MEMS 1999)[C].1999.418-423.
  • 9Gallardo B S,et al.Electrochemical principles for active control of liquids on submillimeter scales[J].Science,1999,283:57-60.
  • 10Jones T B.On the relationship of dielectrophoresis and electrowetting[J].Langmuir,2002,18:4437-4443.

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